Cargando…

Isolation of an ES-Derived Cardiovascular Multipotent Cell Population Based on VE-Cadherin Promoter Activity

Embryonic Stem (ES) or induced Pluripotent Stem (iPS) cells are important sources for cardiomyocyte generation, targeted for regenerative therapies. Several in vitro protocols are currently utilized for their differentiation, but the value of cell-based approaches remains unclear. Here, we character...

Descripción completa

Detalles Bibliográficos
Autores principales: Maltabe, Violetta A., Barka, Eleonora, Kontonika, Marianthi, Florou, Dimitra, Kouvara-Pritsouli, Maria, Roumpi, Maria, Agathopoulos, Simeon, Kolettis, Theofilos M., Kouklis, Panos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5215608/
https://www.ncbi.nlm.nih.gov/pubmed/28101109
http://dx.doi.org/10.1155/2016/8305624
_version_ 1782491788851806208
author Maltabe, Violetta A.
Barka, Eleonora
Kontonika, Marianthi
Florou, Dimitra
Kouvara-Pritsouli, Maria
Roumpi, Maria
Agathopoulos, Simeon
Kolettis, Theofilos M.
Kouklis, Panos
author_facet Maltabe, Violetta A.
Barka, Eleonora
Kontonika, Marianthi
Florou, Dimitra
Kouvara-Pritsouli, Maria
Roumpi, Maria
Agathopoulos, Simeon
Kolettis, Theofilos M.
Kouklis, Panos
author_sort Maltabe, Violetta A.
collection PubMed
description Embryonic Stem (ES) or induced Pluripotent Stem (iPS) cells are important sources for cardiomyocyte generation, targeted for regenerative therapies. Several in vitro protocols are currently utilized for their differentiation, but the value of cell-based approaches remains unclear. Here, we characterized a cardiovascular progenitor population derived during ES differentiation, after selection based on VE-cadherin promoter (Pvec) activity. ESCs were genetically modified with an episomal vector, allowing the expression of puromycin resistance gene, under Pvec activity. Puromycin-surviving cells displayed cardiac and endothelial progenitor cells characteristics. Expansion and self-renewal of this cardiac and endothelial dual-progenitor population (CEDP) were achieved by Wnt/β-catenin pathway activation. CEDPs express early cardiac developmental stage-specific markers but not markers of differentiated cardiomyocytes. Similarly, CEDPs express endothelial markers. However, CEDPs can undergo differentiation predominantly to cTnT(+) (~47%) and VE-cadherin(+) (~28%) cells. Transplantation of CEDPs in the left heart ventricle of adult rats showed that CEDPs-derived cells survive and differentiate in vivo for at least 14 days after transplantation. A novel, dual-progenitor population was isolated during ESCs differentiation, based on Pvec activity. This lineage can self-renew, permitting its maintenance as a source of cardiovascular progenitor cells and constitutes a useful source for regenerative approaches.
format Online
Article
Text
id pubmed-5215608
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Hindawi Publishing Corporation
record_format MEDLINE/PubMed
spelling pubmed-52156082017-01-18 Isolation of an ES-Derived Cardiovascular Multipotent Cell Population Based on VE-Cadherin Promoter Activity Maltabe, Violetta A. Barka, Eleonora Kontonika, Marianthi Florou, Dimitra Kouvara-Pritsouli, Maria Roumpi, Maria Agathopoulos, Simeon Kolettis, Theofilos M. Kouklis, Panos Stem Cells Int Research Article Embryonic Stem (ES) or induced Pluripotent Stem (iPS) cells are important sources for cardiomyocyte generation, targeted for regenerative therapies. Several in vitro protocols are currently utilized for their differentiation, but the value of cell-based approaches remains unclear. Here, we characterized a cardiovascular progenitor population derived during ES differentiation, after selection based on VE-cadherin promoter (Pvec) activity. ESCs were genetically modified with an episomal vector, allowing the expression of puromycin resistance gene, under Pvec activity. Puromycin-surviving cells displayed cardiac and endothelial progenitor cells characteristics. Expansion and self-renewal of this cardiac and endothelial dual-progenitor population (CEDP) were achieved by Wnt/β-catenin pathway activation. CEDPs express early cardiac developmental stage-specific markers but not markers of differentiated cardiomyocytes. Similarly, CEDPs express endothelial markers. However, CEDPs can undergo differentiation predominantly to cTnT(+) (~47%) and VE-cadherin(+) (~28%) cells. Transplantation of CEDPs in the left heart ventricle of adult rats showed that CEDPs-derived cells survive and differentiate in vivo for at least 14 days after transplantation. A novel, dual-progenitor population was isolated during ESCs differentiation, based on Pvec activity. This lineage can self-renew, permitting its maintenance as a source of cardiovascular progenitor cells and constitutes a useful source for regenerative approaches. Hindawi Publishing Corporation 2016 2016-12-22 /pmc/articles/PMC5215608/ /pubmed/28101109 http://dx.doi.org/10.1155/2016/8305624 Text en Copyright © 2016 Violetta A. Maltabe et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Maltabe, Violetta A.
Barka, Eleonora
Kontonika, Marianthi
Florou, Dimitra
Kouvara-Pritsouli, Maria
Roumpi, Maria
Agathopoulos, Simeon
Kolettis, Theofilos M.
Kouklis, Panos
Isolation of an ES-Derived Cardiovascular Multipotent Cell Population Based on VE-Cadherin Promoter Activity
title Isolation of an ES-Derived Cardiovascular Multipotent Cell Population Based on VE-Cadherin Promoter Activity
title_full Isolation of an ES-Derived Cardiovascular Multipotent Cell Population Based on VE-Cadherin Promoter Activity
title_fullStr Isolation of an ES-Derived Cardiovascular Multipotent Cell Population Based on VE-Cadherin Promoter Activity
title_full_unstemmed Isolation of an ES-Derived Cardiovascular Multipotent Cell Population Based on VE-Cadherin Promoter Activity
title_short Isolation of an ES-Derived Cardiovascular Multipotent Cell Population Based on VE-Cadherin Promoter Activity
title_sort isolation of an es-derived cardiovascular multipotent cell population based on ve-cadherin promoter activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5215608/
https://www.ncbi.nlm.nih.gov/pubmed/28101109
http://dx.doi.org/10.1155/2016/8305624
work_keys_str_mv AT maltabeviolettaa isolationofanesderivedcardiovascularmultipotentcellpopulationbasedonvecadherinpromoteractivity
AT barkaeleonora isolationofanesderivedcardiovascularmultipotentcellpopulationbasedonvecadherinpromoteractivity
AT kontonikamarianthi isolationofanesderivedcardiovascularmultipotentcellpopulationbasedonvecadherinpromoteractivity
AT floroudimitra isolationofanesderivedcardiovascularmultipotentcellpopulationbasedonvecadherinpromoteractivity
AT kouvarapritsoulimaria isolationofanesderivedcardiovascularmultipotentcellpopulationbasedonvecadherinpromoteractivity
AT roumpimaria isolationofanesderivedcardiovascularmultipotentcellpopulationbasedonvecadherinpromoteractivity
AT agathopoulossimeon isolationofanesderivedcardiovascularmultipotentcellpopulationbasedonvecadherinpromoteractivity
AT kolettistheofilosm isolationofanesderivedcardiovascularmultipotentcellpopulationbasedonvecadherinpromoteractivity
AT kouklispanos isolationofanesderivedcardiovascularmultipotentcellpopulationbasedonvecadherinpromoteractivity